WO2017135655A1 - Serre gonflable de type à circulation naturelle utilisant la chaleur géothermique - Google Patents

Serre gonflable de type à circulation naturelle utilisant la chaleur géothermique Download PDF

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Publication number
WO2017135655A1
WO2017135655A1 PCT/KR2017/001038 KR2017001038W WO2017135655A1 WO 2017135655 A1 WO2017135655 A1 WO 2017135655A1 KR 2017001038 W KR2017001038 W KR 2017001038W WO 2017135655 A1 WO2017135655 A1 WO 2017135655A1
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WO
WIPO (PCT)
Prior art keywords
greenhouse
air
geothermal heat
natural circulation
house
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Application number
PCT/KR2017/001038
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English (en)
Korean (ko)
Inventor
정종기
정동규
Original Assignee
정종기
정동규
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Filing date
Publication date
Application filed by 정종기, 정동규 filed Critical 정종기
Publication of WO2017135655A1 publication Critical patent/WO2017135655A1/fr

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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G9/00Cultivation in receptacles, forcing-frames or greenhouses; Edging for beds, lawn or the like
    • A01G9/24Devices or systems for heating, ventilating, regulating temperature, illuminating, or watering, in greenhouses, forcing-frames, or the like
    • A01G9/245Conduits for heating by means of liquids, e.g. used as frame members or for soil heating
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G9/00Cultivation in receptacles, forcing-frames or greenhouses; Edging for beds, lawn or the like
    • A01G9/14Greenhouses
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G9/00Cultivation in receptacles, forcing-frames or greenhouses; Edging for beds, lawn or the like
    • A01G9/14Greenhouses
    • A01G9/1407Greenhouses of flexible synthetic material
    • A01G9/1415Greenhouses of flexible synthetic material with double or multiple walls
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G9/00Cultivation in receptacles, forcing-frames or greenhouses; Edging for beds, lawn or the like
    • A01G9/14Greenhouses
    • A01G9/143Equipment for handling produce in greenhouses
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G9/00Cultivation in receptacles, forcing-frames or greenhouses; Edging for beds, lawn or the like
    • A01G9/24Devices or systems for heating, ventilating, regulating temperature, illuminating, or watering, in greenhouses, forcing-frames, or the like
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A40/00Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
    • Y02A40/10Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in agriculture
    • Y02A40/25Greenhouse technology, e.g. cooling systems therefor

Definitions

  • the present invention relates to a natural circulation type air house using geothermal heat, and in particular, has a dual greenhouse structure of a first greenhouse and a second greenhouse, and is located in the first greenhouse by fluidly connecting the first greenhouse and the second greenhouse. 2
  • the present invention relates to a natural circulation air house using geothermal heat to improve the thermal insulation and thermal insulation effect of a greenhouse, and to improve the soil environment by increasing the air permeability of the soil.
  • a greenhouse for growing crops has the same length and is fixed to the ground at both ends of each frame in a state in which the frames formed in a constant curve are kept at regular intervals, and then covered with a vinyl film on the frames fixed on the ground.
  • Various crops are to be cultivated within.
  • Such a conventional vinyl house is designed to maintain a temperature at which the crops can be cultivated at a low temperature in winter when the plastic house is generally covered with a single layer of the outer surface of a single-layer frame. Since the installation is made in the form of covering the frame top, there was a problem that easily damaged or lost due to natural disasters such as typhoon, flood, hail.
  • an air house In order to improve such a structural problem, an air house has recently been developed in which a double house is installed to maintain a constant air pressure therein, thereby preventing damage caused by an external environment.
  • salts that are not absorbed due to irrigation or fertilizer spraying are accumulated to gradually decrease the porosity of the soil, thereby lowering the oxygen flowability of the soil, thereby deteriorating the growing environment of the crop.
  • the present invention has been made to solve the problems of the prior art as described above having a dual greenhouse structure of the first greenhouse and the second greenhouse, the first greenhouse and the second greenhouse is located in the first greenhouse fluidly connected 2
  • the purpose of the present invention is to provide a natural circulation air house using geothermal heat, which is suitable for maintaining the greenhouse environment properly by increasing the insulation and thermal insulation effect of the greenhouse, and improving the soil environment by increasing the air permeability of the soil. have.
  • a natural circulation air house using geothermal heat comprises a first membrane body partitioning a space to form a first greenhouse; A second membrane body partitioning a space to form a second greenhouse within the first greenhouse; A multifunctional support fixed to the second membrane to support the second membrane and to fluidly connect the first greenhouse and the second greenhouse; And an air supply pipe buried in the ground where the second greenhouse is formed to supply air that is air-conditioned into the second greenhouse.
  • the multi-functional support may include a bottom that constitutes a passageway through which the worker can pass, and a side that is fixed to the bottom along a longitudinal axis of the multi-functional support.
  • a blocking surface may be further included on the side along the longitudinal axis of the multifunctional support.
  • One or more doors may be included on the bottom of the multifunctional support.
  • the multi-functional support may further include a ladder for lifting and lowering the worker.
  • the multifunctional support may further include one or more dampers for controlling the fluid connection of the first greenhouse and the second greenhouse.
  • the damper may be further connected to the flexible pipe length adjustable.
  • the damper may further include a blower for assisting the blowing.
  • the air supply pipe may further include an extension air supply pipe protruding into the second greenhouse.
  • An end portion of the extension pipe may further include a spreader for spreading air.
  • the present invention has a dual greenhouse structure of the first greenhouse and the second greenhouse, by fluidly connecting the first greenhouse and the second greenhouse to increase the thermal insulation, thermal insulation effect of the second greenhouse located in the first greenhouse greenhouse environment It is effective to provide a natural circulation air house using geothermal heat to properly maintain the appropriate, and also to improve the soil environment by improving the air permeability of the soil.
  • FIG. 1 is a perspective view schematically showing a natural circulation air house using geothermal heat according to an embodiment of the present invention.
  • FIG. 2 is a cross-sectional view of a natural circulation air house using geothermal heat of FIG. 1 cut in a direction perpendicular to an axis in a longitudinal direction.
  • FIG. 3 is an enlarged view of a part of the multifunctional support constituting the natural circulation air house using the geothermal heat of FIG. 1, and a partially enlarged perspective view showing a state where a damper is installed.
  • Figure 4 is a view showing one specific example of the multi-functional support constituting the natural circulation air house using the geothermal heat of Figure 1, shown along the longitudinal axis of the multi-function support, the multi-functional support door and It is a side sectional view which shows the state with a ladder installed, and the state with a damper installed.
  • FIG. 5 is a view showing one specific example of the air supply pipe constituting the natural circulation air house using the geothermal heat of FIG. 1, according to one embodiment to supply the air conditioned to the second greenhouse according to one embodiment. It is sectional drawing which shows typically the state embedded in the ground.
  • FIG. 6 is a view showing one specific example of the air supply pipe constituting the natural circulation air house using the geothermal heat of Figure 1, according to another embodiment the air supply pipe air supplied to the second greenhouse air conditioning It is sectional drawing which shows typically the state embedded in the ground so that.
  • FIG. 7 is a cross-sectional view showing another specific example of the air supply pipe constituting the natural circulation air house using the geothermal heat of FIG.
  • the present invention includes a first membrane body partitioning a space to form a first greenhouse; A second membrane body partitioning a space to form a second greenhouse within the first greenhouse; A multifunctional support fixed to the second membrane to support the second membrane and to fluidly connect the first greenhouse and the second greenhouse; And an air supply pipe buried in the ground in which the second greenhouse is formed to supply air conditioned to the second greenhouse.
  • the natural circulation air house using the geothermal heat comprises a first membrane body (10) partitioning the space to form a first greenhouse (S1); A second film body 20 partitioning a space to form a second greenhouse S2 in the first greenhouse S1; A multifunctional support 30 fixed to the second membrane 20 to support the second membrane 20 and fluidly connect the first greenhouse S1 and the second greenhouse S2; And an air supply pipe 50 embedded in the ground (G) in which the second greenhouse (S2) is formed to supply air that is air-conditioned into the second greenhouse (S2). That is, according to the present invention, to support the second membrane body 20 constituting the second greenhouse (S2) while at the same time fluidly connecting the first greenhouse (S1) and the second greenhouse (S2) are installed in a double.
  • the first membrane body 10 may include at least a portion of air having a relatively high temperature in the second greenhouse S2 formed by the second membrane body 20 so as to include a functioning multifunctional support 30. It is possible to supply to the first greenhouse (S1) to increase the heat insulation and thermal insulation effect by the first greenhouse (S1), in particular, the second greenhouse (S2) to prevent the second greenhouse (S2) from experiencing excessive temperature change, the second plant is actually grown It is characterized in that it is possible to prevent the temperature of the greenhouse S2 from being excessively low or high, and at the same time to prevent changes in the appearance such as crushing of the first greenhouse S1 from occurring.
  • air conditioning is an abbreviation for air conditioning, and is used to mean appropriately controlling the temperature, humidity, flow rate, and the like of air as desired. That is, when the airhouse system of the present invention is for the growth of plants, it is used to mean that the temperature, humidity and flow rate are controlled to be particularly suitable for the growth of plants.
  • the first film body 10 functions to form the first greenhouse S1.
  • the first membrane body 10 may be made of a single-layer film made of the same and / or similar synthetic resins used in a vinyl house, or may be made of a multilayer film that is expanded by blowing air therein and may be freed by air pressure.
  • the first membrane body 10 is formed of a single layer film, the first membrane body 10 is inflated by an air pressure higher than atmospheric pressure by forcibly blowing air into the first greenhouse S1, and thus, the first greenhouse S1.
  • the first membrane fixing means 11 to form a first greenhouse (S1).
  • the first membrane body 10 is further fixed by the second membrane fixing means 12 of a string or a net on its outer surface to form the first greenhouse S1 formed by the first membrane body 10. Even if the air pressure higher than atmospheric pressure is formed in the can be fixed to maintain a constant shape.
  • the first membrane body 10 when the first membrane body 10 is formed of a multilayer film, when pressurized air is supplied and expanded into the multilayer film, the first membrane body 10 may be self-supporting without being supported by a separate membrane fixing means.
  • the second membrane body 20 functions to form the second greenhouse S2, except that the second membrane 20 forms the second greenhouse S2 in the first greenhouse S1 and is supported by the multifunctional support 30. May be understood as being the same as and / or similar to the first membrane body 10, and the second membrane body 20 is also added by the third membrane fixing means 21 and / or the fourth membrane fixing means 22. It can be fixed and supported, so that repeated descriptions will be avoided.
  • the second greenhouse S2 is formed in the first greenhouse S1 and provides a space for performing the purpose of substantially expecting the greenhouse effect. That is, for example, to provide a substantial plant cultivation space that provides conditions suitable for the growth of the plant in a place where there is a fear of the East Sea or where low temperature is expected to inhibit the growth of the plant.
  • the multifunctional support 30 is fixed to the second membrane 20 to support the second membrane 20 and to fluidly connect the first greenhouse S1 and the second greenhouse S2. do. That is, when the first greenhouse S1 and the second greenhouse S2 are not fluidly connected even when the second greenhouse S2 is simply installed in the first greenhouse S1, such as a double plastic house.
  • the heat retention effect of the second greenhouse S2 may be further improved as compared with the case where the first greenhouse S1 having the structure surrounding the entire second greenhouse S2 does not exist, the first greenhouse S1 may be improved.
  • the air conditioners are heated separately (eg, heated), they may be easily cooled by outside air outside the first greenhouse S1, which may directly or indirectly affect the greenhouse environment of the second greenhouse S2. have.
  • the air conditioning in the first greenhouse (S1) must be performed separately. That is, a separate air heating means and the like must be provided, which is disadvantageous in that it is not cost-effective due to an increase in installation cost of the air house system itself, an increase in effort and cost for maintenance, and the like.
  • the present invention makes it possible to supply the air in the second greenhouse (S2), which is appropriately coordinated to form a suitable greenhouse environment, into the first greenhouse (S1) through the multifunctional support (30). It is possible to prevent the rapid cooling of the air in the first greenhouse (S1), thereby preventing the rapid change of the greenhouse environment of the second greenhouse (S2).
  • the multifunctional support 30 is near the apex of the second greenhouse S2, that is, the second one. It is preferable to be fixed to be located at the highest point of the greenhouse (S2).
  • the air supply pipe 50 is buried in the ground G where the second greenhouse S2 is formed and air-conditioned into the second greenhouse S2.
  • outside air of the greenhouse serves to supply the second greenhouse (S2) through the ground (G).
  • the supply of outside air through the ground (G) is to supply fresh air outside the greenhouse, that is, outside the greenhouse, but to supply through the ground (G) to increase the oxygen saturation of the soil, thereby increasing the oxygen fluidity of the soil Maximizing the microbial metabolic activity and improving the soil environment by changing the acidic soil to alkaline soil can be improved the cultivation environment of the crop.
  • the air supply pipe 50 has its one end exposed to the ground, preferably outside the first greenhouse S1 and / or the second greenhouse S2, more preferably the first greenhouse S1.
  • the air is supplied to the inside of the second greenhouse S2 by allowing it to be heated to geothermal heat while passing through the buried underground G, which is exposed to the outside and not air-conditioned, thereby allowing the air to be supplied to the inside of the second greenhouse S2.
  • S2 It may be possible to create a greenhouse environment as desired for the interior.
  • air conditioning is specifically expressed as heating for the sake of understanding, the air conditioning in the present invention is not limited to the heating furnace, and depending on the greenhouse environment to be constructed, the air supply pipe 50 may be used by using the temperature difference between the atmosphere and the ground.
  • the present invention mainly uses geothermal heat, that is, heating and / or cooling of the air passing through the air supply pipe (50) to save energy and enable the operation of a cost-effective airhouse system, the present invention It is not intended to be limited to this, and it should be understood that the air supply pipe 50 may be connected to a separate air conditioning system for heating / cooling the air as necessary.
  • the separate air conditioning system may be a conventional air conditioner, and specifically, may be a heater for heating and / or a cooler for cooling.
  • the air supply pipe 50 is preferably buried horizontally in the ground (G), the air supply pipe 50 is formed with one or more vents 51, one or more vents (51) ) Is preferably formed only in the upper half of the air supply pipe 50 so that air, preferably air-conditioned and pressurized high-pressure air is injected upward.
  • the multifunctional support 30 has a bottom surface 32 constituting a passageway through which an operator can pass, and the bottom surface along a longitudinal axis of the multifunctional support 30. It may include a side 33 fixed to 32. Thus, it may be possible for an operator to pass and / or perform work on the bottom 32.
  • the side surface 33 integrally fixed to the bottom surface 32 functions as a guide for safe passage when a worker passes, as well as reinforcing the bottom surface 32, resulting in the bottom surface 32 and the side surface. It can function to reinforce the entire multifunctional support 30 including the 33.
  • the multi-function support 30 may be supported by the support 31, the multi-function support 30 serves to distinguish the first greenhouse (S1) and the second greenhouse (S2).
  • the first greenhouse S1 and the second greenhouse S2 may be divided based on the bottom surface 32 of the multifunctional support 30, and the upper portion of the bottom surface 32 becomes the first greenhouse S1.
  • the lower part of the bottom surface 32 becomes a 2nd greenhouse S2.
  • a blocking surface 34 may be further included on the side surface 33 along the longitudinal axis of the multifunctional support 30.
  • the membrane fixing surface 34 is preferably fixed to extend in a direction perpendicular to the side surface 33, that is, in a direction parallel to the bottom surface 32, and the second membrane body 20 is fixed to the membrane fixing surface 34. Can be fixed by adhesion.
  • a portion of the second membrane body 20 may be fixed to the membrane fixing surface 34 while a portion of the second membrane body 20 may also be fixed to the side surface 33, and the second membrane body 20 and the membrane fixing surface 34 may be fixed.
  • And / or the fixing between the sides 33 may be accomplished by an adhesive or the like, but it should be understood that the present invention is not intended to be limited thereto, but may also be fixed by other fastening means.
  • FIG. 3 illustrates a state in which the second membrane body 20 is fixed to only one side of the membrane fixing surfaces on both sides, it may be understood that the second membrane body 20 should be fixed to both membrane fixing surfaces on both sides.
  • one or more doors 40 may be further included on the bottom surface 32 of the multi-function support 30 to assist a worker's passage through the multi-function support 30. Through 40) it may be easy for the worker to access the multifunctional support 30.
  • the door 40 is hingedly fixed to the bottom 32 of the multi-function support 30 by a hinge 41 can be fixed to open and close, preferably for safety the door 40 is the bottom It can be hinged so as to open and close upward relative to (32) so as not to open arbitrarily except when the operator intentionally lifts the door 40. It is to be understood that at least one door 40 may be installed in the multifunctional support 30, and a plurality of doors 40 may be installed as necessary.
  • the multifunctional support 30 may further include a ladder 42 for lifting and lowering of the worker.
  • the ladder 42 serves to help the operator to climb up and down from the ground to the multi-functional support 30, and can be understood as a conventional ladder for access to the height.
  • At least one or more ladders 42 may be installed even when at least one door 40 is formed, and the same number of ladders as the door 40 may be installed, as well as that of the door 40. It should be understood that less than a number of ladders may be installed, and each ladder may be movably installed toward the doors 40.
  • the multi-functional support 30 may further include one or more dampers 35 to control the fluid connection between the first greenhouse (S1) and the second greenhouse (S2).
  • the damper 35 may be used as long as the damper 35 has a function of controlling the flow rate and controlling the flow rate of the air.
  • the opening and closing of the damper 35 and the flow rate control may operate the damper with a lever manually, or may be operated electronically and automatically by an actuator (not shown).
  • the damper 35 may be further connected to the flexible pipe body 36 is adjustable in length.
  • the stretch tube is commonly referred to as 'javabar hose' and may be commercially available. It is possible to adjust the expansion and contraction pipe 36 so that the position of the end of the expansion pipe 36 is positioned at an appropriate height from the ground, which is supplied from the second greenhouse (S2) to the first greenhouse (S1) It may be possible to arbitrarily adjust the position at which the air to be blown is blown.
  • the damper 35 may further include a blower 37 for assisting air blowing, and the blower 37 may control the flow of air from the second greenhouse S2 to the first greenhouse S1 according to a worker's choice. It can function to promote.
  • the blower 37 is commonly referred to as a 'blower' and may be commercially available.
  • the air supply pipe 50 is preferably covered with a gravel layer 60, and is covered with the gravel layer 60 through an air vent 51 formed in the air supply pipe 50. Soil particles are prevented from flowing into the air supply pipe 50, and a certain gap is stably ensured.
  • the lower portion of the air supply pipe 50 is configured to prevent the settlement of the gravel layer 60 and the support wire mesh 70 for stably supporting the air supply pipe (50).
  • the air supply pipe 50 may further include an extension air supply pipe 52 protruding into the second greenhouse S2. It is also possible for the air conditioned air supplied through the air supply pipe 50 through the extension air supply pipe 52 to supply air conditioned to the space of the second greenhouse S2 directly without passing through the ground G. can do.
  • An end portion of the extension pipe 52 may further include a diffuser 53 for dispersing air, and the diffuser 53 may be provided with one or more vents 54 to extend the extension pipe 52.
  • the air supplied through it may be released into the greenhouse space, but may be evenly distributed and released.
  • the first membrane body 10 and the second membrane body 20 is blocked by the outside, at least one side of both sides to maintain a constant air pressure to support the shape of the inside of the air house
  • a machine room (not shown) may be installed where a high pressure pump (not shown) for forcibly supplying air may be installed, and an additional entrance for entering and exiting the air house may be installed in the machine room, or separately from the machine room.
  • the entrance may be installed at one side where the machine room is located or the other side where the machine room is not located, and the air house may be further supplied with high pressure air from the high pressure pump in the machine room into the air house.
  • the inside of the airhouse may be maintained at a constant pressure to enable the airhouse to maintain an appearance having a constant volume.
  • a temperature for the desired greenhouse environment e. G., The lowest temperature required for proper growth of plants grown therein.
  • auxiliary thermostats eg, moveable and actuated heaters.
  • the natural circulation air house using the geothermal heat according to the present invention is not limited to the standard, for example, the elevation of the second greenhouse (S2) may be 10 to 20m, preferably 15m, the first greenhouse ( The elevation of S1) may be about 12 to 25 m, preferably 17 to 18 m, and the width of the bottom surface 32 and the height of the side surface 33 of the multifunctional support 30 may be about 1 m.
  • the elevation of the second greenhouse (S2) may be 10 to 20m, preferably 15m
  • the elevation of S1 may be about 12 to 25 m, preferably 17 to 18 m
  • the width of the bottom surface 32 and the height of the side surface 33 of the multifunctional support 30 may be about 1 m.
  • the present invention can be used in the manufacturing industry for manufacturing the air house system and the concentrated fisheries industry to perform plant cultivation using such an air house.

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  • Life Sciences & Earth Sciences (AREA)
  • Environmental Sciences (AREA)
  • Soil Sciences (AREA)
  • Greenhouses (AREA)

Abstract

La présente invention concerne une serre gonflable de type à circulation naturelle utilisant la chaleur géothermique, la serre gonflable ayant une structure de double serre qui comprend une première serre et une deuxième serre, la structure de double serre permettant aux première et deuxième serres de communiquer fluidiquement l'une avec l'autre afin d'augmenter un effet d'isolation thermique de la deuxième serre située dans la première serre, de manière à maintenir de façon appropriée un environnement de serre, et augmente la perméabilité à l'air du sol afin d'améliorer un environnement de sol. La serre gonflable utilisant la chaleur géothermique comprend : une première paroi qui définit un espace pour former la première serre ; une deuxième paroi qui définit un espace pour former la deuxième serre à l'intérieur de la première serre ; un support multifonctionnel fixé à la deuxième paroi pour soutenir la deuxième paroi et permettre que les première et deuxième serres communiquent fluidiquement l'une avec l'autre ; et un tube d'alimentation en air enfoui sous le sol où la deuxième serre est formée, afin de distribuer de l'air conditionné dans la deuxième serre.
PCT/KR2017/001038 2016-02-01 2017-01-31 Serre gonflable de type à circulation naturelle utilisant la chaleur géothermique WO2017135655A1 (fr)

Applications Claiming Priority (2)

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KR10-2016-0012221 2016-02-01
KR1020160012221A KR101779695B1 (ko) 2016-02-01 2016-02-01 지열을 이용한 자연순환 방식 에어하우스

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WO2017135655A1 true WO2017135655A1 (fr) 2017-08-10

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KR20140093393A (ko) * 2013-01-18 2014-07-28 김원준 냉난방기능 및 적설피해 방지기능을 가진 비닐하우스 제작에 사용되는 이중비닐
KR20150001513A (ko) * 2013-06-27 2015-01-06 코오롱인더스트리 주식회사 중공사막 및 그 제조방법
KR20150025436A (ko) * 2013-08-29 2015-03-10 선문대학교 산학협력단 이중 피복 온실

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WO2020008113A1 (fr) * 2018-07-04 2020-01-09 Oy Hortimill Ltd Système et procédé de culture de plantes

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